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JP6257679B2 - Elbow guard - Google Patents
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JP6257679B2 - Elbow guard - Google Patents

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JP6257679B2
JP6257679B2 JP2016071518A JP2016071518A JP6257679B2 JP 6257679 B2 JP6257679 B2 JP 6257679B2 JP 2016071518 A JP2016071518 A JP 2016071518A JP 2016071518 A JP2016071518 A JP 2016071518A JP 6257679 B2 JP6257679 B2 JP 6257679B2
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buffer piece
sewn
hard
armor
foam
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JP2017176665A (en
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充晶 西本
充晶 西本
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Futago Shoji Co Ltd
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Description

本発明は、球技用のエルボガードに関する。   The present invention relates to an elbow guard for ball games.

従来、野球やソフトボール等の球技に於て、投球されたボールが打者の腕に直接当たらないようにしてケガを防止するエルボガードが使用されている(特許文献1参照)。   2. Description of the Related Art Conventionally, in ball games such as baseball and softball, an elbow guard that prevents injury by preventing a pitched ball from directly hitting a batter's arm has been used (see Patent Document 1).

特表2003−505173号公報Japanese translation of PCT publication No. 2003-505173

しかし、特許文献1記載のエルボガードは、投球されたボールの衝撃で使用者の腕を打撲させたり骨折させたりしないよう剛性を高く設定する必要があり、外側の硬質剛性基材の厚さ寸法を大きくしなければならなかった。また、硬質剛性基材を厚くすることで、エルボガードの重量が重くなり、プレーの邪魔になるという欠点があった。   However, the elbow guard described in Patent Document 1 needs to have a high rigidity so as not to bruise or break the user's arm due to the impact of the pitched ball. I had to make it bigger. In addition, by increasing the thickness of the hard rigid base material, there is a drawback that the weight of the elbow guard is increased, which hinders play.

そこで、本発明は、軽量で、かつ、投球されたボールの衝撃から打者の腕を確実に保護し得るエルボガードを提供することを目的とする。   Accordingly, an object of the present invention is to provide an elbow guard that is lightweight and can reliably protect the batter's arm from the impact of the pitched ball.

本発明に係るエルボガードは、弾性変形可能な低発泡ポリエチレン又は低発泡ポリプロピレンから成る硬質保護板を内有する防具本体部の表て面に、緩衝片部が縫着され、上記防具本体部の表て面と上記緩衝片部の裏面との間に、上下方向に開口して上記緩衝片部の変形を許容するための空隙部形成されたものである。
また、上記緩衝片部は、左右両側縁部に沿って縫着線部が縫製されているものである。
In the elbow guard according to the present invention, a buffer piece is sewn on the front surface of the armor main body having a hard protective plate made of elastically deformable low-foam polyethylene or low-foam polypropylene. between the back surface and the cushioning piece Te, open in the vertical direction in which the gap portion for allowing the deformation of the cushioning piece portion is formed.
Moreover, the said buffer piece part is a thing by which the sewn line part is sewn along the right-and-left both-sides edge part.

本発明のエルボガードによれば、空隙部によって緩衝片部の変形が許容されてボールの衝撃エネルギーを瞬間的に吸収でき、打者の腕を確実に保護できる。軽量化でき、プレーの邪魔にならず、打者が快適にプレーできる。   According to the elbow guard of the present invention, the deformation of the buffer piece portion is allowed by the gap portion, the impact energy of the ball can be absorbed instantaneously, and the batter's arm can be reliably protected. The weight can be reduced, and the batter can play comfortably without interfering with play.

本発明の実施の一形態を示した斜視図である。It is the perspective view which showed one Embodiment of this invention. 本発明の実施の一形態を示す断面平面図であり、(b)は防具本体部の拡大断面平面図であり、(c)は緩衝片部の拡大断面平面図である。BRIEF DESCRIPTION OF THE DRAWINGS It is a cross-sectional top view which shows one Embodiment of this invention, (b) is an expanded sectional plan view of a armor main-body part, (c) is an expanded cross-sectional top view of a buffer piece part. 本発明の他の実施形態を示した斜視図である。It is the perspective view which showed other embodiment of this invention. 本発明の他の実施形態を示す断面平面図である。It is a cross-sectional top view which shows other embodiment of this invention. 本発明の別の実施形態を示す断面平面図である。It is a cross-sectional top view which shows another embodiment of this invention. 本発明のエルボガードの作用を説明するための簡略図である。It is a simplified diagram for demonstrating the effect | action of the elbow guard of this invention. 本発明のエルボガードの作用を説明するための斜視図である。It is a perspective view for demonstrating the effect | action of the elbow guard of this invention.

以下、実施の形態を示す図面に基づき本発明を詳説する。
図1と図2に示すように、本発明のエルボガードは、防具本体部1の表て面1Aに、緩衝片部2が一体に縫着されている。
防具本体部1は、横断面が弓形弯曲状の硬質保護板5を内有し、自由状態で、全体がアーチ型の弯曲形状に形成されている。防具本体部1は、図2(a)と(b)に示すように、ナイロン系又はポリエステル系合成樹脂から成る表皮26と、弾性変形可能な低発泡ポリエチレン又は低発泡ポリプロピレンから成る硬質保護板5と、ポリエチレン系発泡樹脂又はポリウレタン系発泡樹脂から成る発泡内装体27と、ナイロン系又はポリエステル系合成樹脂から成る裏地28とを、順次積層し、外周縁の全周にわたって縁巻部29が縫製されている。また、防具本体部1の裏面1B(肌対応面)には、全面にわたって面状ファスナーの雌部19が形成されている。防具本体部1の左側縁部又は右側縁部には装着用ベルト30が付設されている。
Hereinafter, the present invention will be described in detail with reference to the drawings illustrating embodiments.
As shown in FIGS. 1 and 2, in the elbow guard of the present invention, the buffer piece 2 is integrally sewn on the front surface 1 </ b> A of the armor body 1.
The armor main body 1 has a hard protective plate 5 whose cross section is an arcuate curved shape, and is formed in an arched curved shape as a whole in a free state. As shown in FIGS. 2 (a) and 2 (b), the armor body 1 includes a skin 26 made of nylon or polyester synthetic resin, and a hard protective plate 5 made of elastically deformable low foam polyethylene or low foam polypropylene. And a foamed interior 27 made of polyethylene-based foamed resin or polyurethane-based foamed resin and a backing 28 made of nylon-based or polyester-based synthetic resin are sequentially laminated, and the edge winding portion 29 is sewn over the entire circumference of the outer periphery. ing. Further, a female portion 19 of a planar fastener is formed on the entire back surface 1B (skin-corresponding surface) of the armor main body 1. A wearing belt 30 is attached to the left edge or right edge of the armor body 1.

緩衝片部2は、図2(a)と(c)に示すように、ナイロン系又はポリエステル系合成樹脂あるいは合成皮革から成る表皮11と、低発泡ポリエチレン又は低発泡ポリプロピレンから成る複数の硬質芯材20と、ポリエチレン系発泡樹脂又はポリウレタン系発泡樹脂から成る発泡体12と、ナイロン系又はポリエステル系合成樹脂あるいは合成皮革から成る裏地13とを、順次積層し、外周縁の全周にわたって縁巻部16が縫製されている。   As shown in FIGS. 2A and 2C, the buffer piece 2 includes a skin 11 made of nylon or polyester synthetic resin or synthetic leather, and a plurality of hard cores made of low foam polyethylene or low foam polypropylene. 20, a foam 12 made of polyethylene-based foamed resin or polyurethane-based foamed resin, and a lining 13 made of nylon-based or polyester-based synthetic resin or synthetic leather are sequentially laminated, and the edge winding portion 16 extends over the entire circumference of the outer peripheral edge Is sewn.

硬質芯材20は、帯板状に形成されて上下方向に配設されている。また、硬質芯材20は、弾性変形可能である。複数の硬質芯材20の内、中央に比較的幅の広い(面積大の)硬質芯材20Aを配設し、その両隣に比較的幅の狭い(面積小の)硬質芯材20B,20Bを配設している。緩衝片部2は、中央の硬質芯材20Aと隣り合う硬質芯材20B,20Bの間に、上下方向の縫い目(ステッチ)21,21を縫製することで、発泡体12が圧縮されて窪み22が凹設され、窪み22(縫い目21)に沿って折曲自在に形成されている。なお、緩衝片部2は、硬質芯材20B,20Bの左右外方に近接して縫い目23,23が縫製されている。   The hard core material 20 is formed in a strip shape and is arranged in the vertical direction. Further, the hard core member 20 can be elastically deformed. Among the plurality of hard core materials 20, a relatively wide (large area) hard core material 20A is disposed at the center, and relatively narrow (small area) hard core materials 20B and 20B are disposed on both sides thereof. It is arranged. The shock-absorbing piece 2 is formed by compressing the foam 12 by sewing the stitches 21 and 21 in the vertical direction between the central hard core 20A and the adjacent hard cores 20B and 20B. Is formed so as to be foldable along the recess 22 (the seam 21). The buffer piece 2 has seams 23 and 23 sewn close to the left and right outer sides of the hard core members 20B and 20B.

図1と図2に示すように、緩衝片部2は、左右両側縁部2A,2Aに沿って縫着線部7,7が縫製され、防具本体部1に一体に縫着されている。
緩衝片部2は、縫い目21,21に沿って折曲げられて横断面門型の姿勢となり、左右両側縁部2A,2Aが縫着線部7,7にて防具本体部1に一体に縫着されて、横断面門型の姿勢を保持し、防具本体部1の表て面1Aと緩衝片部2の裏面2Bとの間に、緩衝片部2の変形を許容するための空隙部10が形成されている。
As shown in FIGS. 1 and 2, the buffer piece 2 is sewn to the armor body 1 integrally with the sewn line portions 7 and 7 along the left and right side edges 2 </ b> A and 2 </ b> A.
The buffer piece 2 is bent along the seams 21 and 21 to have a cross-sectional gate-like posture, and the left and right side edges 2A and 2A are sewn integrally to the armor body 1 at the sewing line portions 7 and 7. A gap 10 for holding the posture of the cross-sectional gate shape and allowing deformation of the buffer piece 2 between the front surface 1A of the armor body 1 and the back surface 2B of the buffer piece 2 while being worn. Is formed.

次に、本発明の他の実施形態について説明する。
図3,図4では、緩衝片部2は、表皮11と、低発泡ポリエチレン又は低発泡ポリプロピレンから成る硬質弯曲芯材6と、裏地13とを、順次積層している。外周縁の全周にわたって縁巻部16が縫製されている。緩衝片部2は、硬質弯曲芯材6の左右外方に近接して縫い目24,24が縫製されている。
防具本体部1は、図1〜図4と同様の構成であるため詳しい説明を省略する。
硬質弯曲芯材6は、横断面弯曲状に形成された1枚物の樹脂成形品であって、弾性変形可能である。硬質弯曲芯材6は、防具本体部1が内有する硬質保護板5の曲率半径Rより小さな曲率半径Rにて弯曲している。即ち、緩衝片部2は、自由状態で、防具本体部1より小さなアーチ型の弯曲形状である。
本発明に於て、硬質保護板5の曲率半径Rとは、中心点Oから硬質保護板5の内周面までの距離とし、硬質弯曲芯材6の曲率半径Rとは、中心点Oから硬質弯曲芯材6の内周面までの距離とする。
Next, another embodiment of the present invention will be described.
3 and 4, the buffer piece 2 is formed by sequentially laminating an outer skin 11, a hard bent core material 6 made of low foamed polyethylene or low foamed polypropylene, and a lining 13. The edge winding portion 16 is sewn over the entire circumference of the outer peripheral edge. In the buffer piece 2, seams 24 and 24 are sewn close to the left and right outer sides of the hard curved core material 6.
Since the armor main body 1 has the same configuration as that shown in FIGS.
The hard-curved core material 6 is a single-piece resin molded product formed in a cross-sectional curved shape and is elastically deformable. The hard-curved core material 6 is bent with a radius of curvature R 2 smaller than the radius of curvature R 1 of the hard protective plate 5 included in the armor main body 1. That is, the buffer piece 2 has an arch-shaped bent shape smaller than the armor main body 1 in a free state.
In the present invention, the radius of curvature R 1 of the hard protective plate 5 is the distance from the center point O 1 to the inner peripheral surface of the hard protective plate 5, and the radius of curvature R 2 of the hard curved core member 6 is the center. The distance from the point O 2 to the inner peripheral surface of the hard-curved core material 6 is used.

図3と図4に示すように、緩衝片部2は、左右両側縁部2A,2Aに沿って縫着線部7,7が縫製されて、防具本体部1に一体に縫着されている。防具本体部1の表て面1Aと緩衝片部2の裏面2Bとの間には、横断面三日月形状の空隙部10が形成されている。   As shown in FIGS. 3 and 4, the buffer piece 2 is sewn integrally with the armor body 1 by sewing the sewn line portions 7 along the left and right side edges 2 </ b> A and 2 </ b> A. . A gap 10 having a crescent-shaped cross section is formed between the front surface 1A of the armor main body 1 and the back surface 2B of the buffer piece 2.

次に、図5では、緩衝片部2は、表皮11と、ポリエチレン系発泡樹脂又はポリウレタン系発泡樹脂から成る発泡体12と、裏地13とを、順次積層している。防具本体部1は、図1〜図4と同様の構成である。
緩衝片部2は、自由状態で、防具本体部1より小さなアーチ型の弯曲形状に形成されている。発泡体12は、厚み方向の弾性圧縮変形にて(ボール等の)衝撃を吸収する。緩衝片部2は、左右両側縁部2A,2Aに沿って縫着線部7,7が縫製されて、防具本体部1の表て面1Aと緩衝片部2の裏面2Bとの間に、横断面三日月形状の空隙部10が形成されている。
Next, in FIG. 5, the buffer piece 2 is formed by sequentially laminating a skin 11, a foam 12 made of a polyethylene foam resin or a polyurethane foam resin, and a lining 13. The armor body 1 has the same configuration as that shown in FIGS.
The buffer piece 2 is formed in an arch-shaped bent shape smaller than the armor body 1 in a free state. The foam 12 absorbs an impact (such as a ball) by elastic compression deformation in the thickness direction. The buffer piece portion 2 is sewn with sewn line portions 7 and 7 along the left and right side edges 2A and 2A, and between the front surface 1A of the armor body portion 1 and the back surface 2B of the buffer piece portion 2, A space 10 having a crescent-shaped cross section is formed.

上述した本発明のエルボガードの使用方法(作用)について説明する。
図6に示すように、本発明のエルボガード(図1,図2参照)にボールBが衝突すると、緩衝片部2の表て面に強い衝撃力Fが付与される。このとき、緩衝片部2は、図中矢印M,Mに示すような曲げが生じ、衝撃エネルギーを瞬間的に吸収する。このようにして、防具本体部1に伝わる衝撃が大きく軽減される。即ち、ボールBが緩衝片部2に衝突した際、空隙部10によって緩衝片部2の変形が許容されて、衝撃エネルギーを瞬間的に吸収する。かつ、図6と図7に矢印F,Fにて示すように、左右両側方へ衝撃力が分散しつつ防具本体部1の左右両側縁に伝達され、しかも、上下方向にも分散しつつ伝達されるので、防具本体部1及び使用者の腕への衝撃が和らぐ。従って、防具本体部1・緩衝片部2によって、使用者の腕を打撲させたり骨折させたりしないよう保護することができる。
The use method (action) of the above-described elbow guard of the present invention will be described.
As shown in FIG. 6, when the ball B collides with the elbow guard (see FIGS. 1 and 2) of the present invention, a strong impact force F 0 is applied to the surface of the buffer piece 2. At this time, the buffer piece 2 is bent as indicated by arrows M 1 and M 2 in the drawing, and instantaneously absorbs impact energy. In this way, the impact transmitted to the armor main body 1 is greatly reduced. In other words, when the ball B collides with the buffer piece 2, the deformation of the buffer piece 2 is allowed by the gap 10 and instantaneously absorbs impact energy. In addition, as indicated by arrows F 1 and F 1 in FIGS. 6 and 7, the impact force is transmitted to the left and right side edges of the armor body 1 while being distributed to the left and right sides, and is also distributed in the vertical direction. Therefore, the impact on the armor body 1 and the user's arm is eased. Therefore, the armor body 1 and the buffer piece 2 can protect the arm of the user from being bruised or broken.

なお、本発明は、設計変更可能であって、例えば、防具本体部1は、平板状の硬質保護板5や折曲状の硬質保護板5を内有しても良い。また、図4に示す緩衝片部2は、硬質弯曲芯材6の裏面側に発泡体12を有するものでも良い。発泡体12を内有することで、厚み方向の弾性圧縮変形にてボールBの衝撃をより多く吸収できる利点がある。   The design of the present invention can be changed. For example, the armor main body 1 may include a flat hard protective plate 5 or a bent hard protective plate 5. Moreover, the buffer piece part 2 shown in FIG. 4 may have the foam 12 on the back surface side of the hard-curved core material 6. By having the foam 12 inside, there is an advantage that more impact of the ball B can be absorbed by elastic compression deformation in the thickness direction.

以上のように、本発明に係るエルボガードは、硬質保護板5を内有する防具本体部1の表て面1Aに、緩衝片部2が縫着され、上記防具本体部1の表て面1Aと上記緩衝片部2の裏面2Bとの間に、空隙部10が形成されたので、空隙部10によって緩衝片部2の変形が許容されてボールBの衝撃エネルギーを瞬間的に吸収でき、打者の腕を確実に保護できる。軽量化でき、プレーの邪魔にならず、打者が快適にプレーできる。   As described above, the elbow guard according to the present invention has the buffer piece 2 sewn on the surface 1A of the armor main body 1 having the hard protective plate 5 and the surface 1A of the armor main body 1 is sewn. And the back surface 2B of the buffer piece 2 are formed, the deformation of the buffer piece 2 is allowed by the gap 10 and the impact energy of the ball B can be absorbed instantaneously. You can protect your arm. The weight can be reduced, and the batter can play comfortably without interfering with play.

また、上記緩衝片部2は、左右両側縁部2A,2Aに沿って縫着線部7,7が縫製されているので、ボールBが衝突して緩衝片部2に強い衝撃力Fが付与された際、緩衝片部2が変形して衝撃エネルギーを瞬間的に吸収でき、ボールBの衝撃から使用者の腕を確実に保護できる。 Further, since the buffer piece 2 is sewn with the sewn line portions 7 and 7 along the left and right side edges 2A and 2A, the ball B collides and a strong impact force F 0 is applied to the buffer piece 2. When applied, the buffer piece 2 can be deformed to instantly absorb impact energy, and the user's arm can be reliably protected from the impact of the ball B.

1 防具本体部
1A 表て面
2 緩衝片部
2A 側縁部
2B 裏面
5 硬質保護板
7 縫着線部
10 空隙部
DESCRIPTION OF SYMBOLS 1 Armor main-body part 1A Front surface 2 Buffer piece part 2A Side edge part 2B Back surface 5 Hard protection board 7 Sewing line part 10 Cavity part

Claims (2)

弾性変形可能な低発泡ポリエチレン又は低発泡ポリプロピレンから成る硬質保護板(5)を内有する防具本体部(1)の表て面(1A)に、緩衝片部(2)が縫着され、
上記防具本体部(1)の表て面(1A)と上記緩衝片部(2)の裏面(2B)との間に、上下方向に開口して上記緩衝片部(2)の変形を許容するための空隙部(10)が形成されたことを特徴とするエルボガード。
A buffer piece (2) is sewn on the front surface (1A) of the armor body (1) having a hard protective plate (5) made of elastically deformable low-foam polyethylene or low-foam polypropylene ,
Between the front surface (1A) of the armor body (1) and the back surface (2B) of the buffer piece (2), an opening is made in the vertical direction to allow deformation of the buffer piece (2). elbow guards, characterized in that the air gap for (10) is formed.
上記緩衝片部(2)は、左右両側縁部(2A)(2A)に沿って縫着線部(7)(7)が縫製されている請求項1記載のエルボガード。   The elbow guard according to claim 1, wherein the buffer piece (2) is sewn with sewn line portions (7) (7) along left and right side edges (2A) (2A).
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